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首页> 外文期刊>American Journal of Physiology >Expression and transport properties of the human ileal and renal sodium-dependent bile acid transporter.
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Expression and transport properties of the human ileal and renal sodium-dependent bile acid transporter.

机译:人回肠和肾钠依赖性胆汁酸转运蛋白的表达和转运特性。

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摘要

The enterohepatic circulation of bile acids is maintained by Na(+)-dependent transport mechanisms. To better understand these processes, a full-length human ileal Na(+)-bile acid cotransporter cDNA was identified using rapid amplification of cDNA ends and genomic cloning techniques. Using Northern blot analysis to determine its tissue expression, we readily detected the ileal Na(+)-bile acid cotransporter mRNA in terminal ileum and kidney. Direct cloning and mapping of the transcriptional start sites confirmed that the kidney cDNA was identical to the ileal Na(+)-bile acid cotransporter. In transiently transfected COS cells, ileal Na(+)-bile acid cotransporter-mediated taurocholate uptake was strictly Na+ dependent and chloride independent. Analysis of the substrate specificity in transfected COS or CHO cells showed that both conjugated and unconjugated bile acids are efficiently transported. When the inhibition constants for other potential substrates such as estrone-3-sulfate were determined, the ileal Na(+)-bile acid cotransporter exhibited a narrower substrate specificity than the related liver Na(+)-bile acid cotransporter. Whereas the multispecific liver Na(+)-bile acid cotransporter may participate in hepatic clearance of organic anion metabolites and xenobiotics, the ileal and renal Na(+)-bile acid cotransporter retains a narrow specificity for reclamation of bile acids.
机译:胆汁酸的肠肝循环是由Na(+)依赖性转运机制维持的。为了更好地理解这些过程,使用cDNA末端的快速扩增和基因组克隆技术鉴定了全长人回肠Na(+)-胆汁酸共转运蛋白cDNA。使用Northern印迹分析来确定其组织表达,我们随时可以在末端回肠和肾脏中检测回肠Na(+)-胆汁酸共转运蛋白mRNA。转录起始位点的直接克隆和作图证实,肾脏cDNA与回肠Na(+)-胆汁酸共转运蛋白相同。在瞬时转染的COS细胞中,回肠Na(+)-胆汁酸共转运蛋白介导的牛磺胆酸盐的摄取严格依赖于Na +和不依赖于氯。对转染的COS或CHO细胞中底物特异性的分析表明,结合胆汁酸和未结合胆汁酸均可有效转运。当确定其他潜在底物(如硫酸雌酮-3-硫酸盐)的抑制常数时,回肠Na(+)-胆汁酸共转运蛋白显示出比相关的肝Na(+)-胆汁酸共转运蛋白更窄的底物特异性。尽管多特异性肝脏Na(+)-胆汁酸共转运蛋白可能参与肝脏清除有机阴离子代谢产物和异种生物的作用,但回肠和肾脏Na(+)-胆汁酸共转运蛋白保留了狭窄的胆汁酸回收特异性。

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